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首页> 外文期刊>Journal of Integrative Neuroscience >THE DEPENDENCE OF BEHAVIORAL AUDITORY THRESHOLDS ON THE DELAY OF ECHO-LIKE SIGNALS IN NOCTUID MOTHS (LEPIDOPTERA, NOCTUIDAE)
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THE DEPENDENCE OF BEHAVIORAL AUDITORY THRESHOLDS ON THE DELAY OF ECHO-LIKE SIGNALS IN NOCTUID MOTHS (LEPIDOPTERA, NOCTUIDAE)

机译:夜蛾蛾(鳞翅目,夜蛾)中行为听觉阈值与回声信号延迟的相关性

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The auditory system of noctuoid moths capable to respond to ultrasounds has long been a model for anti-predator studies in neuroethology. Many moths avoid hunting bats by listening for their echolocation calls and taking evasive manoeuvres to escape predation. Besides these flight defences, certain tiger moths (Arctiidae) emit high-frequency clicks to jam the echolocator of an attacking bat. Another suggested function for ultrasonic audition in moths along with their capability to emit loud ultrasonic clicks was pulse echolocation. However, it seemed difficult to arrange sufficient temporal resolution in a simple invertebrate auditory system. Here we present an evidence of moth's capability to perceive an echo following its own click with a very short delay. The behavioral responses of moths to the acoustic pulses imitating echoes of their own clicks were investigated under conditions of tethered flight. It has been found that such echo-like stimulation evokes an increase in average emission rateof own acoustic signals in moths. Auditory thresholds were measured in two noctuid species (Enargia paleacea Esp. and Blepharita satura Schiff.) at stimulus delays 0.2, 0.3, 0.5 and 1 ms in relation to the respective moth clicks. Our findings reveal the ability of these moths to perceive echoes of their own signals, thus demonstrating potential possibility for use of pulse echolocation.
机译:能够响应超声的夜蛾蛾的听觉系统长期以来一直是神经行为学中抗捕食者研究的模型。许多飞蛾通过侦听它们的回声定位呼叫并进行回避逃避的捕食来避免猎杀蝙蝠。除了这些飞行防御系统外,某些虎蛾(Arctiidae)还会发出高频咔嗒声,以卡住攻击蝙蝠的回声定位器。飞蛾超声听觉的另一个建议功能是发出大声的超声咔嗒声,这是脉冲回声定位。但是,在简单的无脊椎动物听觉系统中安排足够的时间分辨率似乎很困难。在这里,我们提供了飞蛾能够以很短的延迟感知其单击后回声的能力的证据。在系留飞行的条件下,研究了飞蛾对模仿其点击的回声的声脉冲的行为响应。已经发现,这种类似回声的刺激引起飞蛾自身声音信号的平均发射率的增加。在两种蛾类物种(Enargia paleacea Esp。和Blepharita satura Schiff。)的刺激阈值相对于各自的蛾声咔嗒声分别为0.2、0.3、0.5和1 ms的情况下,测量了听阈。我们的发现揭示了这些飞蛾感知其自身信号回波的能力,从而证明了使用脉冲回波定位的潜在可能性。

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